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首页> 外文期刊>Vitamins and hormones. >Intrinsic, Functional, and Structural Properties of beta-Thymosins and beta-Thymosin/WH2 Domains in the Regulation and Coordination of Actin Self-Assembly Dynamics and Cytoskeleton Remodeling
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Intrinsic, Functional, and Structural Properties of beta-Thymosins and beta-Thymosin/WH2 Domains in the Regulation and Coordination of Actin Self-Assembly Dynamics and Cytoskeleton Remodeling

机译:β-胸腺素和β-胸腺素/ WH2域的内在,功能和结构特性在肌动蛋白自组装动力学和细胞骨架重塑的调节和协调。

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摘要

beta-Thymosins are a family of heat-stable multifunctional polypeptides that are expressed as small proteins of about 5 kDa (similar to 45 amino acids) almost exclusively in multicellular animals. They were first isolated from the thymus. As full-length or truncated polypeptides, they appear to stimulate a broad range of extracellular activities in various signaling pathways, including tissue repair and regeneration, inflammation, cell migration, and immune defense. However, their cell surface receptors and structural mechanisms of regulations in these multiple pathways remain still poorly understood. Besides their extracellular activities, they belong to a larger family of small, intrinsically disordered actin-binding domains called WH2/beta-thymosin domains that have been identified in more than 1800 multidomain proteins found in different taxonomic domains of life and involved in various actin-based motile processes including cell morphogenesis, motility, adhesions, tissue development, intracellular trafficking, or pathogen infections. This review briefly surveys the main recent findings to understand how these small, intrinsically disordered but functional domains can interact with many unrelated partners and can thus integrate and coordinate various intracellular activities in actin self-assembly dynamics and cell signaling pathways linked to their cytoskeleton remodeling.
机译:β-胸腺肽是热稳定的多功能多肽家族,几乎只在多细胞动物中表达为约5 kDa(类似于45个氨基酸)的小蛋白。它们首先与胸腺分离。作为全长或截短的多肽,它们似乎在各种信号通路中刺激广泛的细胞外活性,包括组织修复和再生,炎症,细胞迁移和免疫防御。然而,它们在这些多途径中的细胞表面受体和调控的结构机理仍然知之甚少。除了细胞外活动外,它们还属于一个更大的家族,称为WH2 /β-胸腺肽域,属于内在无序的小型肌动蛋白结合域,该域已在生活的不同分类域中发现的1800多个多域蛋白中被鉴定,并参与各种肌动蛋白基础的运动过程,包括细胞形态发生,运动,粘连,组织发育,细胞内运输或病原体感染。这篇综述简要调查了最近的主要发现,以了解这些小的,内在无序但功能性的域如何与许多不相关的伴侣相互作用,从而可以整合和协调肌动蛋白自组装动力学和与其细胞骨架重塑相关的细胞信号通路中的各种细胞内活动。

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